US11397366B2

Switchable light-collimating layer including bistable electrophoretic fluid

Summary by NHIP

Switchable light-collimating film

The film uses a collimating layer with bistable electrophoretic fluid to narrow viewing angles for privacy. Elongated chambers measure at least 20 μm thick, with adjacent gaps under 30 μm arranged in offset rows and columns.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

A switchable light-collimating film can be used as a privacy filter for computer monitors or other display devices. The film comprises a plurality of elongated chambers having pigment particles, the position of which can be controlled by the applied electric field. Distribution of the pigment particles throughout the elongated chambers, as opposed to their concentration on one side of the chambers, narrows the viewing angle to the light passing through the film and provides privacy of the viewing images to the user.

US11397366B2, drawing sheet 1
Sheet 1 of 19

Term

13.3 yearsleft in the term

Expires 31 December 2039, including 158 days of term adjustment.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

19 claims: 2 independent, 17 dependent

  1. 1
    Broadest claimClaim Score 17, narrow(NHIP)A switchable light-collimating film comprising:a first light-transmissive electrode layer;a collimating layer having a thickness of at least 20 μm, and comprising a plurality of elongated chambers, each elongated chamber having an opening, and each elongated chamber having height, length (L), and width (W);a bistable electrophoretic fluid comprising pigment particles disposed in each elongated chamber;a sealing layer that seals the bistable electrophoretic fluid within at least one of the plurality of elongated chambers by spanning the opening of the elongated chamber;and a second light-transmissive electrode layer, wherein the first and second light-transmissive layers are disposed on either side of the collimating layer;wherein the elongated chambers are arranged in rows and columns when the collimating layer is viewed from above;wherein the longer dimension (L) of the elongated chambers run along rows;wherein the adjacent elongated chambers within the same row are separated by a gap of less than 30 μm;wherein first row of elongated chambers includes a gap between elongated chambers of first column and second column;wherein second row of elongated chambers includes a gap between elongated chambers of first column and second column;wherein the gap between elongated chambers of first column and second column in the first row is offset horizontally from the gap between elongated chambers of first column and second column in the second row;wherein third row of elongated chambers includes a gap between elongated chambers of first column and second column;wherein the gap between elongated chambers of first column and second column in the second row is offset horizontally from the gap between elongated chambers of first column and second column in the third row;and wherein the gap between elongated chambers of first column and second column in the first row is offset horizontally from the gap between elongated chambers of first column and second column in the third row.
  2. 15
    A display comprising:a light source;a switchable light-collimating film comprising: a first light-transmissive electrode layer;a collimating layer having a thickness of at least 20 μm, and comprising a plurality of elongated chambers, each elongated chamber having an opening, and each elongated chamber having height, length (L), and width (W);a bistable electrophoretic fluid comprising pigment particles disposed in each elongated chamber;a sealing layer that seals the bistable electrophoretic fluid within an elongated chamber by spanning the opening;and a second light-transmissive electrode layer, wherein the first and second light-transmissive layers are disposed on either side of the collimating layer;an active matrix of thin film transistors;a liquid crystal layer;and a color filter array;wherein the elongated chambers are arranged in rows and columns when the collimating layer is viewed from above;wherein the longer dimension (L) of the elongated chambers run along rows, wherein the adjacent elongated chambers within the same row are separated by a gap of less than 30 μm;wherein first row of elongated chambers includes a gap between elongated chambers of first column and second column;wherein second row of elongated chambers includes a gap between elongated chambers of first column and second column;wherein the gap between elongated chambers of first column and second column in the first row is offset horizontally from the gap between elongated chambers of first column and second column in the second row;wherein third row of elongated chambers includes a gap between elongated chambers of first column and second column;wherein the gap between elongated chambers of first column and second column in the second row is offset horizontally from the gap between elongated chambers of first column and second column in the third row;and wherein the gap between elongated chambers of first column and second column in the first row is offset horizontally from the gap between elongated chambers of first column and second column in the third row.